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37 results for “Shennongjia”
Fig. 13 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 13. Comparison of typical head scales and head shapes of Oligodon (top); 8 supralabials, 4 and 5 in contact with eye, 2 pre-oculars, 2 post-oculars, 1+2 temporals, 1 loreal, enlarged, upturned rostral scale, to the head scales of Stichophanes (bottom); 6 supralabials, 3 and 4 in contact with eye, 1 pre-ocular, 2 post-oculars, 1+2 temporals, no loreal, blunt rostral scale. Photos by Kevin R. Messenger.
Fig. 7 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 7. Courtship behavior by the male, rubbing his chin along the female, observed on 28 June 2006. Photo by Kevin R. Messenger.
Fig. 9. Nine eggs from a female measuring 533 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 9. Nine eggs from a female measuring 533 mm SVL and 673 mm TL on 30 June 2006. Photo by Kevin R. Messenger.
Fig. 1 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 1. Locations of field stations and of Stichophanes ningshaanensis (n = 22) within the Shennongjia NNR.
Fig. 12 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 12. Comparison of right maxillae; Oligodon on the top, with the characteristic kukri-shaped rear teeth which it uses to saw into eggs, distinguished from the anterior teeth (from Coleman et al. 1993), Stichophanes on the bottom, anterior teeth all the same, and a lack of rear-specialized teeth (from Wang et al. 2014).
Fig. 3 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 3. Close up of the head, showing detail of the scales, and illustrating the indistinct neck of the species. Photo by Kevin R. Messenger.
Fig. 6 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 6. Tail-curling defensive behavior characteristic of Oligodon: O. formosanus (left), O. ornatus (right), and enlarged rostral scale. Photos by Kevin R. Messenger.
Fig. 5 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 5. Typical habitat of Stichophanes ningshaanensis in the Pingqian area pre-2013. Photo by Kevin R. Messenger.
Fig. 15 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 15. Left: underside view of Pareas vindumi (from Vogel 2015), showing the lack of a mental groove due to asymmetrical chin shields. Right: underside view of Stichophanes (from Wang et al. 2014), showing symmetrical chin shields and the presence of a mental groove.
Fig. 16 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 16. Downtown Pingqian. Stichophanes ningshaanensis was commonly found crossing this road and in the habitat adjacent to the road. Picture taken June 2011. Photo by Kevin R. Messenger.
Fig. 14 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 14. Photograph of Pareas formosensis (van Denburgh 1909) from Taiwan, illustrating the concave tongue notch opening that is typical of Pareas members. Photo by Daniel Rosenberg.
Fig. 2 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 2. Current known range of S. ningshaanensis; type locality located in Shaanxi province.
Fig. 11. Hatching and emergence after 64 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 11. Hatching and emergence after 64 days of incubation. Photo by Kevin R. Messenger.
Fig. 10 in Notes on the natural history and morphology of the Ningshan Lined Snake (Stichophanes ningshaanensis Yuen, 1983; Ophidia: Colubridae) and its distribution in the Shennongjia National Nature Reserve, China
Fig. 10. Copulation on 30 June 2006, post oviposition by the female. Photo by Kevin R. Messenger.
Environmental data and OTU table of bacteria and fungi in Jianfengling, Shennongjia and Xing'an Mountains
<p>Understanding the elevational pattern of soil microbial diversity is crucial for microbial biogeography, yet, the elevational patterns of diversity across different climatic zones, trophic levels and taxonomic levels remain unclear.</p> <p>In this study, we investigated the elevational patterns of species richness, evenness and the relationship between species richness and evenness (RRE) in the forest soil bacterial and fungal communities and individual phyla across three climatic zones (tropical, subtropical and cold temperate).</p> <p>Our results revealed that soil bacterial richness (alpha diversity) decreased with elevation, while fungi richness exhibited a hump-shaped pattern in tropical and cold temperate forests. Elevational patterns of evenness in bacterial and fungal communities showed hump-shaped patterns across climatic zones, except bacterial evenness in the tropical forest. Both bacterial and fungal richness and evenness were positively correlated in the subtropical and cold temperate forests, while negatively correlated for bacteria in the tropical forest. The richness and evenness of soil microorganisms across different regions were controlled by climatic and edaphic factors. Soil pH was the most important factor associated with the variations in bacterial richness and evenness, while mean annual temperature explained the major variations in fungal richness. Our results addressed the varieties of elevational patterns of microbial diversity in climate zones and taxonomic levels, further indicating that richness and evenness may respond differently to environmental gradients.</p>
Environmental data and OTU table of bacteria and fungi in Jianfengling, Shennongjia and Xing'an Mountains
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FIGURE 6 in Koenigia hedbergii (Polygonaceae: Persicarieae), a distinct new species from Shennongjia National Nature Reserve, Central China
FIGURE 6. Box plots of six quantitative characters of Koenigia hedbergii, K. pilosa and K. nepalensis. The boxes (rectangle region) represent the interquartile range and the whiskers (vertical line) represent the range excluding the outliers (circles). The three upper, middle and lower lines on the boxes represent the 75%, 50% and 25% of the variables, respectively. The upper and lower ends of the whiskers represent the maximum and minimum values of the variable, respectively. The circles represents the single value, where the variable value exceeds 1.5 times the difference between the 75% and 25%.
FIGURE 5 in Koenigia hedbergii (Polygonaceae: Persicarieae), a distinct new species from Shennongjia National Nature Reserve, Central China
FIGURE 5. Distribution map of Koenigia hedbergii (red stars), K. pilosa (grenn circles) and K. nepalensis (orange circles).
FIGURE 4 in Koenigia hedbergii (Polygonaceae: Persicarieae), a distinct new species from Shennongjia National Nature Reserve, Central China
FIGURE 4. SEM micrographs of pollen grain of Koenigia hedbergii. A. whole pollen; B. exine surface and aperture. Scale bars: A = 10 μm; B = 1μm.
FIGURE 2. Koenigia hedbergii B. Li & W in Koenigia hedbergii (Polygonaceae: Persicarieae), a distinct new species from Shennongjia National Nature Reserve, Central China
FIGURE 2. Koenigia hedbergii B. Li & W. Du, sp. nov. A. Habitat; B, C. Habit; D. Leaves; E. Opened flower; F. Persistent perianth and trigonous achene. Scale bars: D = 1 cm; E, F = 1 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.